首页> 外文期刊>Journal of Clinical Microbiology >Development of Mitochondrial Loop-Mediated Isothermal Amplification for Detection of the Small Liver Fluke Opisthorchis viverrini (Opisthorchiidae; Trematoda; Platyhelminthes)
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Development of Mitochondrial Loop-Mediated Isothermal Amplification for Detection of the Small Liver Fluke Opisthorchis viverrini (Opisthorchiidae; Trematoda; Platyhelminthes)

机译:线粒体环介导的等温扩增技术开发,用于检测小肝Flu虫(Opisthorchiidae; Trematoda; Platyhelminthes)

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Mitochondrial DNA sequences offer major advantages over the more usual nuclear targets for loop-mediated isothermal amplification approaches (mito-LAMP) because multiple copies occur in every cell. Four LAMP primers [F3, FIP(F1c+F2), BIP(B1c+B2), and B3] were designed based on the mitochondrial nad1 sequence of Opisthorchis viverrini and used for a highly specific assay (mito-OvLAMP) to distinguish DNA of O. viverrini from that of another opisthorchiid (Clonorchis sinensis) and other trematodes (Haplorchis pumilio, Haplorchis taichui, Fasciola hepatica, and Fasciola gigantica). Conventional PCR was applied using F3/B3 primer pairs to verify the specificity of the primers for O. viverrini DNA templates. All LAMP-positive samples could be detected with the naked eye in sunlight, by gel electrophoresis (stained with ethidium bromide), and by addition of SYBR green I to the product in sunlight or under UV light. Only DNA from O. viverrini yielded amplification products by LAMP (and by PCR verification), and the LAMP limit of detection was as little as 100 fg (10?4 ng DNA), indicating that this assay is 10 to 100 times more sensitive than PCR. Field testing was done using representative egg and metacercarial samples collected from localities where the fluke is endemic. With the advantages of simplicity, rapidity, sensitivity, and cost effectiveness, mito-OvLAMP is a good tool for molecular detection and epidemiology studies in regions or countries where O. viverrini is endemic, which can lead to more effective control of opisthorchiasis and trematodiasis.
机译:线粒体DNA序列相对于环介导的等温扩增方法(mito-LAMP)的更常见的核靶标具有主要优势,因为每个细胞中都有多个拷贝。根据维氏梭菌的线粒体 nad1 序列设计了四种LAMP引物[F3,FIP(F1c + F2),BIP(B1c + B2)和B3],并用于高度特异性的检测(mito -OvLAMP)来区分O. viverrini的DNA与另一种阿片鞭毛虫(Clonorchis sinensis)和其他吸虫(Haplorchis pumilio,Haplorchis taichui,Fasciola hepatica和Fasciola gigantica)的DNA。使用F3 / B3引物对进行常规PCR,以验证引物对O. viverrini DNA模板的特异性。在阳光下,通过凝胶电泳(用溴化乙锭染色)以及在阳光下或在紫外光下向产品中添加SYBR green I,可以肉眼检测所有LAMP阳性样品。通过LAMP(和PCR验证),仅来自维氏弧菌的DNA产生扩增产物,并且LAMP的检出限低至100 fg(10 4 ng DNA),表明该测定是灵敏度是PCR的10至100倍。田间试验是使用从the虫流行地区采集的代表性鸡蛋和meta骨样本进行的。 mito-OvLAMP具有简单,快速,灵敏和成本效益高的优点,是在维氏弧菌为地方性流行的地区或国家进行分子检测和流行病学研究的好工具,可以更有效地控制阿昔洛韦和皮癣。

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